IP Library Granted Patent US 8,180,438
Granted Patent B2
US 8,180,438 · App. 12/362,812 · Granted May 15, 2012

Minimally invasive physiologic parameter recorder and introducer system

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Quick Facts
Patent No.
US 8,180,438
App. No.
12/362,812
Granted
May 15, 2012
Kind
B2
Abstract

An implantable monitoring device includes a flexible lead body that includes at least one sensing element. The device also includes a rigid main body connected to the flexible lead body at an attachment point. The rigid main body is generally centered about a longitudinal axis defined by the flexible lead body when the lead body is unflexed. The device further includes a measurement circuit, which is housed within the rigid main body and electrically coupled to the at least one sensing element of the flexible lead body and at least another sensing element on an outside surface of the rigid main body. The measurement circuit is configured to measure a potential difference between the at least one sensing element of the flexible lead body and the at least another sensing element of the main body.

Claims (48)

1. An implantable monitoring device, comprising:

a) a flexible lead body that includes at least one distal sensing element;

b) a main body extending along a longitudinal axis and comprising:

i) a hermetically sealed proximal housing section supporting at least one proximal sensing element on an external surface thereof, and

ii) a non-hermetically sealed distal housing section provided with an intermediate ring electrode disposed annularly around the longitudinal axis, the distal housing section being connected to the flexible lead body at an attachment point; and

c) a measurement circuit housed within the hermetic proximal housing section, the measurement circuit being electrically connected to the proximal sensing element and to the intermediate ring electrode and being electrically connectable to the at least one distal sensing element of the flexible lead body,

d) wherein the measurement circuit is configured to measure a potential difference between any two of the at least one distal sensing element of the flexible lead body, the at least one proximal sensing element and the intermediate ring electrode of the main body.

2. The implantable monitoring device of claim 1 , wherein a portion of the main body tapers from a first width to a second width narrower than the first width.

3. The implantable monitoring device of claim 2 , wherein the portion tapers symmetrically about the longitudinal axis of the rigid main body.

4. The implantable monitoring device of claim 2 , wherein the portion tapers approximately linearly from the first width to the second width.

5. The implantable monitoring device of claim 2 , wherein the portion tapers non-linearly from the first width to the second width.

6. The implantable monitoring device of claim 1 , wherein a first portion of the main body tapers approximately linearly from a first width to a second width narrower than the first width, and a second portion of the main body tapers non-linearly from a third width to a fourth width narrower than the third width.

7. The implantable monitoring device of claim 1 , wherein the main body is rigid.

8. The implantable monitoring device of claim 1 wherein a proximal width of the proximal housing section is substantially greater than a distal width of the distal housing section.

9. The implantable monitoring device of claim 1 , further comprising a loop member on the main body.

10. The implantable monitoring device of claim 9 , wherein the loop member is used to suture the device to body tissue.

11. The implantable monitoring device of claim 9 being extractable from an implant location by applying a withdrawal force to the loop member.

12. An implantable monitoring device, comprising:

a) a flexible lead body;

b) a rigid. main body connected to the flexible lead body at an attachment point, the rigid main body generally centered about a longitudinal axis defined by the flexible lead body when the lead body is unflexed, wherein the main body comprises:

i) a hermetically sealed proximal housing section supporting at least one proximal sensing electrode on an external surface thereof, and

ii) a non-hermetically sealed distal housing section that tapers toward the lead body where it supports an intermediate ring electrode disposed annularly around the longitudinal axis, the tapered distal housing section having a smaller width nearer the lead body than proximate the proximal housing section; and

c) a measurement circuit housed within the hermetic proximal housing section, the measurement circuit being electrically connectable to at least one distal sense electrode on the flexible lead body and being electrically connected to the at least one proximal sense electrode on the external surface of the main body and to the intermediate ring electrode,

d) wherein the measurement circuit is configured to measure a. potential difference between any two of the at least one distal sense electrode on the flexible lead body, the at least one proximal sense electrode and the intermediate ring electrode on the main body.

13. The implantable monitoring device of claim 1 wherein the main body is generally centered about the longitudinal axis extending through the flexible lead body when the lead body is unflexed.

14. An implantable monitoring device, comprising:

a) a main body extending along a longitudinal axis and comprising:

i) a hermetically sealed proximal housing section supporting at least one proximal sensing element on an external surface thereof, and

ii) a non-hermetically sealed distal housing section provided with a ring electrode disposed annularly around the longitudinal axis, the distal housing section being connectable to a flexible lead body at an attachment point; and

b) a measurement circuit housed within the hermetic proximal housing section, the measurement circuit being electrically connected to the proximal sensing element and to the ring electrode and being electrically connectable to at least one distal sensing element of a flexible lead body.

15. The implantable monitoring device of claim 14 wherein the measurement circuit is configured to measure a potential difference between a distal sensing element of a flexible lead body connected to the main body, the at least one proximal sensing element and the ring electrode of the main body.

16. The implantable monitoring device of claim 14 wherein a portion of the main body tapers from a first width to a second width narrower than the first width.

17. The implantable monitoring device of claim 16 wherein the portion tapers symmetrically about the longitudinal axis of the rigid main body.

18. The implantable monitoring device of claim 16 wherein the portion. tapers approximately linearly from the first width to the second width.

19. The implantable monitoring device of claim 16 wherein the portion tapers non-linearly from the first width to the second width.

20. The implantable monitoring device of claim 14 wherein a first portion of the main body tapers approximately linearly from a first width to a second width narrower than the first width, and a second portion of the main body tapers non-linearly from a third width to a fourth width narrower than the third width.

21. The implantable monitoring device of claim 14 wherein the main body is rigid.

22. The implantable monitoring device of claim 14 wherein a proximal width of the proximal housing section is substantially greater than a distal width of the distal housing section.

23. The implantable monitoring device of claim 14 further comprising a loop member on the main body.

24. The implantable monitoring device of claim 23 wherein the loop member is used to suture the device to body tissue.

25. The implantable monitoring device of claim 23 being extractable from an implant location by applying a withdrawal force to the loop member.

26. The implantable monitoring device of claim 14 wherein the main body is generally centered about the longitudinal axis extending through a flexible lead body connected thereto when the lead body is unflexed.

27. An implantable monitoring device, comprising:

a) a rigid main body connectable to a flexible lead body at an attachment point, the rigid main body generally centered about a longitudinal axis defined by the flexible lead body when the lead body is attached thereto and in an unflexed condition, wherein the main body comprises:

i) a hermetically sealed proximal housing section supporting at least one proximal sensing electrode on an external surface thereof, and

ii) a non-hermetically sealed distal housing section that tapers toward a support for a lead body where a ring electrode is disposed annularly around the longitudinal axis, the tapered distal housing section having a smaller width nearer the lead support than proximate the proximal housing section; and

b) a measurement circuit housed within the hermetic proximal housing section, the measurement circuit being electrically connectable to at least one distal sense electrode on a connected flexible lead body and being electrically connected to the at least one proximal sense electrode on the external surface of the main body and to the intermediate ring electrode.

28. The implantable monitoring device of claim 27 wherein the measurement circuit is configured to measure a potential difference between a distal sense electrode on a connected flexible lead body, the at least one proximal sense electrode and the ring electrode on the main body.

Assignments (10)
RELEASE OF SECURITY INTEREST Recorded Oct 12, 2022
From: MANUFACTURERS AND TRADERS TRUST COMPANY (AS ADMINISTRATIVE AGENT)
To: GREATBATCH, INC.; GREATBATCH LTD.; ELECTROCHEM SOLUTIONS, INC.; NEURONEXUS TECHNOLOGIES, INC.; GREATBATCH-GLOBE TOOL, INC.; PRECIMED INC.; MICRO POWER ELECTRONICS, INC.
Reel/Frame 061659/0858 →
RELEASE OF SECURITY INTEREST Recorded Jan 6, 2022
From: MANUFACTURERS AND TRADERS TRUST COMPANY (AS ADMINISTRATIVE AGENT)
To: GREATBATCH, INC.; GREATBATCH LTD.; ELECTROCHEM SOLUTIONS, INC.; NEURONEXUS TECHNOLOGIES, INC.; GREATBATCH-GLOBE TOOL, INC.; PRECIMED INC.; MICRO POWER ELECTRONICS, INC.
Reel/Frame 060938/0069 →
RELEASE OF SECURITY INTEREST Recorded Jan 6, 2022
From: MANUFACTURERS AND TRADERS TRUST COMPANY (AS ADMINISTRATIVE AGENT)
To: GREATBATCH, LTD; ELECTROCHEM SOLUTIONS, INC.; NEURONEXUS TECHNOLOGIES, INC.; MICRO POWER ELECTRONICS, INC.
Reel/Frame 058649/0728 →
SECURITY INTEREST Recorded Oct 27, 2015
From: GREATBATCH, INC.; GREATBATCH LTD.; ELECTROCHEM SOLUTIONS, INC.; NEURONEXUS TECHNOLOGIES, INC.; GREATBATCH-GLOBE TOOL, INC.; PRECIMED INC.; MICRO POWER ELECTRONICS, INC.
To: MANUFACTURERS AND TRADERS TRUST COMPANY
Reel/Frame 036980/0482 →
GRANT OF SECURITY INTEREST Recorded Sep 23, 2013
From: GREATBATCH LTD; ELECTROCHEM SOLUTIONS, INC.; NEURONEXUS TECHNOLOGIES, INC.; MICRO POWER ELECTRONICS, INC.
To: MANUFACTURERS AND TRADERS TRUST COMPANY (AS ADMINISTRATIVE AGENT FOR THE SECURED PARTIES)
Reel/Frame 031290/0278 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 3, 2011
From: DATA SCIENCES INTERNATIONAL, INC.
To: GREATBATCH LTD.
Reel/Frame 026214/0516 →
RELEASE OF SECURITY INTEREST Recorded Jun 24, 2010
From: PARTNERS FOR GROWTH II, L.P.
To: TRANSOMA MEDICAL, INC.
Reel/Frame 024588/0100 →
FORECLOSURE Recorded Mar 23, 2010
From: TRANSOMA MEDICAL, INC.
To: DATA SCIENCES INTERNATIONAL, INC.
Reel/Frame 024120/0696 →
SECURITY AGREEMENT Recorded May 14, 2009
From: TRANSOMA MEDICAL, INC.
To: PARTNERS FOR GROWTH II, L.P.
Reel/Frame 022678/0382 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 26, 2009
From: BROCKWAY, BRIAN P.; MILLS, PERRY A.
To: TRANSOMA MEDICAL, INC.
Reel/Frame 022453/0061 →